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首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >Field measurement comparison of aerosol metals using aerosol beam focused laser-induced plasma spectrometer and reference methods
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Field measurement comparison of aerosol metals using aerosol beam focused laser-induced plasma spectrometer and reference methods

机译:气溶胶束聚焦激光诱导等离子体光谱仪和参考方法对气溶胶金属的现场测量比较

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摘要

Several tests were conducted in July 2002 on an instrument developed by researchers at the Oak Ridge National Laboratory (ORNL) for in-situ, real-time measurement of metal-laden aerosol particles in flue gas from combustion facilities. Stock aqueous solutions of prepared metal concentrations were nebulized and injected into the flue gas to provide spikes for the instrument testing. Strengths of the solutions were designed such that a reference method (RM) was able to obtain a sufficient amount of material on filter samples in 30 min cycles; the collected filters were subsequently analyzed in an analytical laboratory using certified methods. Parallel aerosol measurements were performed by one operator using the ORNL instrument. The recorded signal of an individual element was analyzed using the Lorentzian model and the concentration calculated from a calibration curve that was established prior to the experiments. RM data were able to reflect the loads simulated in the spiked waste stream. However, data collected using the RM was unable to reflect the transient load condition in the flue gas and missed a sample containing beryllium. The possibility of bias in the RM determination of chromium could exist. With the real-time detection capability, the instrument was able to reveal the transient emission variation by making seven consecutive measurements within a 30 min cycle. The measurements for mercury by both techniques appeared to be in good agreement. Further improvement of the system includes the development of user-friendly software for modeling, data analysis tools, and packaging suitable for field transportation.
机译:2002年7月,在橡树岭国家实验室(ORNL)的研究人员开发的一种仪器上进行了几项测试,用于就地,实时测量燃烧设施烟道气中的金属悬浮颗粒。将准备好的金属浓度的储备水溶液雾化并注入烟气中,以提供用于仪器测试的尖峰。设计溶液的强度,以使参考方法(RM)能够在30分钟的循环中在过滤器样品上获得足够量的材料;收集的过滤器随后在分析实验室中使用认证的方法进行分析。一名操作员使用ORNL仪器进行了平行的气溶胶测量。使用洛伦兹模型分析单个元素的记录信号,并根据实验之前建立的校准曲线计算浓度。 RM数据能够反映加标废物流中模拟的负荷。但是,使用RM收集的数据无法反映烟道气中的瞬态负载情况,因此漏掉了含有铍的样品。铬的RM测定中可能存在偏差。借助实时检测功能,该仪器能够在30分钟的周期内进行七次连续测量,从而揭示瞬态发射变化。两种技术对汞的测量似乎吻合良好。该系统的进一步改进包括开发了用于建模的用户友好软件,数据分析工具以及适用于现场运输的包装。

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